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Underground Environment Aware MIMO Design Using Transmit and Receive Beamforming in Internet of Underground Things

机译:地下环境意识到MIMO设计使用传输并在地下互联网上接收波束成形

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In underground (UG) multiple-input and multiple-output (MIMO), the transmit beamforming is used to focus energy in the desired direction. There are three different paths in the underground soil medium through which the waves propagates to reach at the receiver. When the UG receiver receives a desired data stream only from the desired path, then the UG MIMO channel becomes three path (lateral, direct, and reflected) interference channel. Accordingly, the capacity region of the UG MIMO three path interference channel and degrees of freedom (multiplexing gain of this MIMO channel requires careful modeling). Therefore, expressions are required derived the degrees of freedom of the UG MIMO interference channel. The underground receiver needs to perfectly cancel the interference from the three different components of the EM-waves propagating in the soil medium. This concept is based upon reducing the interference the undesired components to minimum at UG receiver using the receive beamforming. In this paper, underground environment aware MIMO using transmit and receive beamforming has been developed. The optimal transmit beamforming and receive combining vectors under minimal inter-component interference constraint are derived. It is shown that UG MIMO performs best when all three component of the wireless UG channel are leveraged for beamforming. The environment aware UG MIMO technique leads to three-fold performance improvements and paves the wave for design and development of next generation sensor-guided irrigation systems in the field of digital agriculture.
机译:在地下(UG)多输入和多输出(MIMO)中,发送波束成形用于将能量聚焦在所需方向上。地下土壤介质中存在三种不同的路径,波浪传播到接收器的地面。当UG接收器仅从所需路径接收所需的数据流时,UG MIMO信道成为三个路径(横向,直接和反射)的干扰信道。因此,UG MIMO三路径干扰通道的容量区域和自由度(该MIMO信道的复用增益需要仔细建模)。因此,需要表达式衍生UG MIMO干扰通道的自由度。地下接收器需要完全取消在土壤介质中传播的来自波浪的三个不同部件的干扰。该概念基于使用接收波束成形将不期望的组件的干扰减少到UG接收器的最小值。在本文中,已经开发了使用发射和接收波束成形的地下环境感知MIMO。最佳发送波束成形和接收组合下最小组件间干扰约束矢量导出。结果表明,UG MIMO执行最好当无线UG信道的所有三个分量杠杆波束形成。环境意识到的UG MIMO技术导致三倍性能改进,并铺平了数字农业领域下一代传感器引导灌溉系统的设计和开发的波浪。

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